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首页> 外文期刊>Algae >The Effect of Substrate on Ecophysiological Characteristics of Green Macroalga Ulva pertusa Kjellman (Chlorophyta)
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The Effect of Substrate on Ecophysiological Characteristics of Green Macroalga Ulva pertusa Kjellman (Chlorophyta)

机译:底物对绿巨藻的生理生态特性的影响

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Seashore joining with land and sea, which is typical habitat for marine macroalgae, is classified two types of shore as soft- and hard-bottom shore according to topographical (geological) and ecological features. We compared two of Ulva pertusa Kjellman from two contrasting habitats, sandy (soft-bottom, Haenam) and rocky shore (hard-bottom, Hadong) in terms of chlorophyll-a fluorescence and its parameters, and various photosynthetic pigment and nutrient content in the tissue of those. Both of habitats were different in the light environment such as light attenuation coefficient and even in nutrient concentration of ambient seawater. Electron transport rate (ETR) of Ulva from sandy shore was higher than from rocky shore. The range of photosynthetic pigment content in the tissue of U. pertusa was significantly much more in from sandy shore, and also nitrogen and phosphorus content were significantly higher except for carbon content. However, there were no significant differences in the ratio of among photosynthetic pigments, and N:P ratio was similar between each other, even though significantly different. Our result implied on the reason of why most of green tides in the worldwide concentrated and frequently occurred at sites with sandy, muddy and silty bottoms, being classified as soft-bottom shore.
机译:沿海与陆地和海洋相连,这是海洋大型藻类的典型栖息地,根据地形(地质)和生态特征,将海岸分为软底海岸和硬底海岸两种类型。我们根据叶绿素-a荧光及其参数,以及其中两个不同的光合色素和养分含量,比较了两个相反生境的两个Ulva pertusa Kjellman,它们分别是沙质(软底,Haenam)和多岩石的海岸(硬底,Hadong)。这些组织。两种生境在光环境下都不同,例如光衰减系数,甚至周围海水的养分浓度也不同。 Ulva从沙质海岸的电子传输速率(ETR)高于从岩质海岸的电子传输速率。在沙质海岸中,百日草组织中光合色素的含量范围明显增加,除碳含量外,氮和磷的含量也明显更高。但是,光合颜料之间的比率没有显着差异,并且N:P比率彼此相似,即使有显着差异。我们的结果暗示了为什么全球范围内大多数绿潮集中且频繁发生在沙质,泥泞和粉质底部的地区,被归类为软底海岸的原因。

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